This work outlines the application of the Hamming Code Technique to a high- capacity memory module, specifically a 128 GB NAND flash memory interfaced with Spartan 6 FPGA. The enhanced memory module is designed for integration in the cockpit voice recorders (CVRs) and flight data recorders (FDRs) used in aircraft black boxes. By implementing the Hamming Code, this design aims to significantly improve data integrity and error resilience, which is crucial for the accurate analysis of recordings to determine the causes of aviation accidents.

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Implementation of Hamming Code Technique in High-Capacity Memory Module

  • Shashidhar S. Neelakanthmath,
  • S. Ramakrishna,
  • Suhas B. Shirol,
  • Sujata S. Kotabagi

摘要

This work outlines the application of the Hamming Code Technique to a high- capacity memory module, specifically a 128 GB NAND flash memory interfaced with Spartan 6 FPGA. The enhanced memory module is designed for integration in the cockpit voice recorders (CVRs) and flight data recorders (FDRs) used in aircraft black boxes. By implementing the Hamming Code, this design aims to significantly improve data integrity and error resilience, which is crucial for the accurate analysis of recordings to determine the causes of aviation accidents.